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The thrust vector control market is projected to grow from USD 8.39 billion in 2017 to USD 13.77 billion by 2022, at a CAGR of 10.41% from 2017 to 2022. Increased adoption of thrust vector control in next-generation guided missile systems especially in intercontinental ballistic missile and long-range missiles, increasing investments in space exploration programs and satellites launches, and growth in production and acquisition of super maneuverable fighter aircraft are driving the growth of the thrust vector control market.

Based on technology, the flex nozzle market segment is estimated to lead the market during the forecast period. The growth of this segment can be attributed to the increased implementation in satellite launchers and missiles, which require guidance or steering to fly along a programmed trajectory.

Based on end user, the space agencies segment is projected to witness the highest growth from period 2017 to 2022. With increase in the number of satellites being launched, the number of launch vehicles is also increasing. Besides satellite launches, significant amount is being spent on space exploration programs, thus driving the market in space agencies segment.

North America was the largest market for thrust vector control in 2016. Increasing R&D and procurement of super maneuverable fighter aircraft, increased space research leading to greater number of launch vehicles being used, and increase in satellite launches are driving the growth of the thrust vector control market in North America.

Break-up of profile of primary participants in the thrust vector control market:

This research report categorizes the thrust vector control market based on technology (gimbal nozzle, flex nozzle, thrusters, rotating nozzles, others), application (launch vehicles, missiles, satellites, fighter aircraft), system (actuation, injection, thruster), end user (space agencies, defense). These segments and subsegments are mapped across major regions, namely, North America, Europe, Asia-Pacific, and Rest of the World (RoW).

Reasons to buy this report:

From an insight perspective, this research report focuses on various levels of analyses -industry analysis (industry trends), market share analysis of top players, supply chain analysis, and company profiles, which together comprise and discuss basic views on the competitive landscape, emerging and high-growth segments of the thrust vector control market, high-growth regions, and market drivers, restraints, challenges, and opportunities.

The report provides insights on the following pointers:

Market Penetration: Comprehensive information on thrust vector control offered by top players in the market

Product Development/Innovation: Detailed insights on upcoming technologies, research & development activities, and new product launches in the thrust vector control market

4 Premium Insights4.1 Attractive Market Opportunities in the Thrust Vector Control Market4.2 Thrust Vector Control Market, By Technology4.3 Thrust Vector Control Market, By Application4.4 Thrust Vector Control Market, By System4.5 Thrust Vector Control Market, By End User4.6 Thrust Vector Control Market Road Map4.7 Thrust Vector Control Market, By Region

5 Market Overview5.1 Introduction5.2 Market Segmentation5.3 Market Dynamics5.3.1 Drivers5.3.1.1 Increased Need for Super-Maneuverable Fighter Aircraft5.3.1.2 Increase in Number of Launch Vehicles and Satellite Launches5.3.1.3 Increase in Development Programs and Production of Missiles Across the World5.3.2 Restraints5.3.2.1 High Complexity in Thrust Vector Control Technology5.3.2.2 Emerging Trend of Reusable Launch Vehicles and Boosters5.3.3 Opportunities5.3.3.1 Ucav System Envisioned as Future Force for Suppression of Enemy Air Defenses5.3.4 Challenges5.3.4.1 Limitations Associated With Use of Gimbal Nozzle & Secondary Injection

11 Thrust Vector Control Market, By Region11.1 Introduction11.2 North America11.2.1 By End User11.2.2 By Technology11.2.3 By Application11.2.4 By System11.2.5 By Country11.2.5.1 U.S.11.2.5.1.1 By End User11.2.5.1.2 By Technology11.2.5.1.3 By Application11.2.5.1.4 By System11.2.5.2 Canada11.2.5.2.1 By End User11.2.5.2.2 By Technology11.2.5.2.3 By Application11.2.5.2.4 By System11.3 Europe11.3.1 By End User11.3.2 By Technology11.3.3 By Application11.3.4 By System11.3.4.1 European Union11.3.4.1.1 By End User11.3.4.1.2 By Technology11.3.4.1.3 By Application11.3.4.1.4 By System11.3.4.2 Russia11.3.4.2.1 By End User11.3.4.2.2 By Technology11.3.4.2.3 By Application11.3.4.2.4 By System11.4 Asia-Pacific11.4.1 By End User11.4.2 By Technology11.4.3 By Application11.4.4 By System11.4.5 By Country11.4.5.1 China11.4.5.1.1 By End User11.4.5.1.2 By Technology11.4.5.1.3 By Application11.4.5.1.4 By System11.4.5.2 India11.4.5.2.1 By End User11.4.5.2.2 By Technology11.4.5.2.3 By Application11.4.5.2.4 By System11.4.5.3 Japan11.4.5.3.1 By End User11.4.5.3.2 By Technology11.4.5.3.3 By Application11.4.5.3.4 By System11.4.5.4 Rest of Asia-Pacific11.4.5.4.1 By End User11.4.5.4.2 By Technology11.4.5.4.3 By Application11.4.5.4.4 By System11.5 Rest of the World (RoW)11.5.1 By End User11.5.2 By Technology11.5.3 By Application11.5.4 By System11.5.5 By Country11.5.5.1 Israel11.5.5.1.1 By End User11.5.5.1.2 By Technology11.5.5.1.3 By Application11.5.5.1.4 By System11.5.5.2 South Africa11.5.5.2.1 By End User11.5.5.2.2 By Technology11.5.5.2.3 By Application11.5.5.2.4 By System

Figure 1 Thrust Vector Control Market: Markets CoveredFigure 2 Years Considered for the StudyFigure 3 Research Process FlowFigure 4 Thrust Vector Control Market: Research DesignFigure 5 Breakdown of Primary Interviews: By Company Type, Designation, & RegionFigure 6 Market Size Estimation Methodology: Bottom-Up ApproachFigure 7 Market Size Estimation Methodology: Top-Down ApproachFigure 8 Data TriangulationFigure 9 Assumptions of the Research StudyFigure 10 Thrust Vector Control Market, By Technology, 2017 & 2022 (USD Million)Figure 11 Fighter Aircraft Application Segment is Projected to Lead the Thrust Vector Control Market During the Forecast PeriodFigure 12 Based on System, Thrust Vector Actuation System Segment is Projected to Lead the Thrust Vector Control Market During the Forecast PeriodFigure 13 Based on End User, Defense Segment is Projected to Lead the Thrust Vector Control Market During the Forecast PeriodFigure 14 North America Thrust Vector Control Market is Projected to Grow at the Highest CAGR During the Forecast PeriodFigure 15 Increased Adoption of Super-Maneuvering Fighter Aircraft is A Major Factor Driving the Thrust Vector Control MarketFigure 16 Based on Technology, the Rotating Nozzle Segment is Expected to Lead the Thrust Vector Control Market During the Forecast PeriodFigure 17 The Fighter Aircraft Application Segment is Projected to Lead the Thrust Vector Control Market From 2017 to 2022Figure 18 Based on System, the Thrust Vector Actuation System Segment is Projected to Lead the Thrust Vector Control Market During the Forecast PeriodFigure 19 Based on End User, the Defense Segment is Projected to Lead the Thrust Vector Control Market From 2017 to 2022Figure 20 Thrust Vector Control Market Road MapFigure 21 Thrust Vector Control Market in North America is Projected to Grow at the Highest CAGR During the Forecast PeriodFigure 22 Thrust Vector Control Market SegmentationFigure 23 Drivers, Restraints, Opportunities, and Challenges of the Thrust Vector Control MarketFigure 24 Number of Active Satellites Expected to Increase By 48% By 2022Figure 25 Number of Active Satellites in 2015 Based on ApplicationFigure 26 Rotating Nozzle Segment is Projected to Grow at the Highest CAGR During the Forecast PeriodFigure 27 Fighter Aircraft Segment is Projected to Grow at the Highest CAGR During the Forecast PeriodFigure 28 Thrust Vector Actuation System Will Continue to Account for Highest Market Share During the Forecast PeriodFigure 29 Defense Segment Projected to Grow at the Highest CAGR During the Forecast PeriodFigure 30 Thrust Vector Control Market: Regional Snapshot (2016)Figure 31 North America Thrust Vector Control Market SnapshotFigure 32 Europe Thrust Vector Control Market SnapshotFigure 33 Asia-Pacific Thrust Vector Control Market SnapshotFigure 34 Dive ChartFigure 35 Moog, Inc.: Company SnapshotFigure 36 Woodward, Inc.: Company SnapshotFigure 37 Honeywell International Inc.: Company SnapshotFigure 38 United Technologies Corporation: Company SnapshotFigure 39 BAE Systems PLC: Company SnapshotFigure 40 Orbital ATK: Company SnapshotFigure 41 Parker-Hannifin Corporation: Company SnapshotFigure 42 S.A.B.C.A.: Company SnapshotFigure 43 Dynetics, Inc.: Company Snapshot

Note: Product cover images may vary from those shown

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FEATURED COMPANIES

The thrust vector control market is projected to grow from USD 8.39 Billion in 2017 to USD 13.77 Billion by 2022, at a CAGR of 10.41% during the forecast period. Rise in the implementation of thrust vector control in fighter aircraft to gain superiority over enemy aircraft during aerial combats, increased investment in space exploration programs, and increased adoption of thrust vector control in next-generation guided missile systems are the primary drivers for the growth of the thrust vector control market. The market has been segmented based on technology, application, system, end user, and region.

Based on technology, the thrust vector control market has been segmented into gimbal nozzle, flex nozzle, thrusters, rotating nozzle, and others (injection, jet vanes, tabs). The flex nozzle segment is estimated to lead the market during the forecast period. The growth of this segment is due to the increased implementation of flex nozzles in satellite launchers and missiles because of movable seals and high actuation power.

Based on application, the thrust vector control market has been segmented into launch vehicles, missiles, satellites, and fighter aircraft. The fighter aircraft segment is projected to witness the highest growth during the forecast period. The rise in acquisition of fight aircraft with super maneuverability features by countries such as China and India is expected to drive the market during the forecast period.

Based on end user, the thrust vector market has been segmented into defense and space agencies. The defense segment is projected to lead the market during the forecast period. This is due to increased need for highly maneuverable fighter aircraft to gain an advantage over aerial opponents.

The geographical analysis of the thrust vector control market covers regions, such as North America, Europe, Asia-Pacific, and Rest of the World. North America is estimated to lead the global thrust vector control market in 2017, owing to increasing spending on space exploration programs in the region, as well as heavy investments done by the U.S. in missile research and highly maneuverable aircraft in defense.

Advancements in thrust vector control technology require high R&D and are complex in nature. This, coupled with the increasing use of reusable launch vehicles and boosters, is expected to restrain the growth of the thrust vector control market.